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Computational analyses of curcuminoid analogs against kinase domain of HER2

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dc.contributor.author Wannarat Yim-im
dc.contributor.author Orathai Sawatdichaikul
dc.contributor.author Suwanna Semsri
dc.contributor.author Natharinee Horata
dc.contributor.author Wanwimon Mokmak
dc.contributor.author Sissades Tongsima
dc.contributor.author Apichart Suksamrarn
dc.contributor.author Kiattawee Choowongkomon
dc.contributor.author วรรณรัตน์ ยิ้มอิ่ม
dc.contributor.author อรไท สวัสดิชัยกุล
dc.contributor.author สุวรรณา เสมศรี
dc.contributor.author ณัฐริณี หอระตะ
dc.contributor.author วรรณวิมล หมอกมาก
dc.contributor.author ศิษเฎศ ทองสิมา
dc.contributor.author อภิชาต สุขสําราญ
dc.contributor.author เกียรติทวี ชูวงศ์โกมล
dc.contributor.other Kasetsart University. Institute of Food Research and Product Development en
dc.contributor.other Kasetsart University. Institute of Food Research and Product Development en
dc.contributor.other Huachiew Chalermprakiet University. Faculty of Medical Technology en
dc.contributor.other Huachiew Chalermprakiet University. Faculty of Medical Technology en
dc.contributor.other National Center for Genetic Engineering and Biotechnology en
dc.contributor.other Center for Genetic Engineering and Biotechnology en
dc.contributor.other Ramkhamhaeng University. Faculty of Science en
dc.contributor.other Kasetsart University. National Research University-Kasetsart University en
dc.date.accessioned 2026-02-21T03:03:47Z
dc.date.available 2026-02-21T03:03:47Z
dc.date.issued 2014
dc.identifier.citation BMC Bioinformatics 2014 Aug 3;15(1):261. en
dc.identifier.other doi: 10.1186/1471-2105-15-261
dc.identifier.uri https://has.hcu.ac.th/jspui/handle/123456789/5213
dc.description.abstract Background: Human epidermal growth factor receptor 2 (HER2) has an important role in cancer aggressiveness and poor prognosis. HER2 has been used as a drug target for cancers. In particular, to effectively treat HER2-positive cancer, small molecule inhibitors were developed to target HER2 kinase. Knowing that curcumin has been used as food to inhibit cancer activity, this study evaluated the efficacy of natural curcumins and curcumin analogs as HER2 inhibitors using in vitro and in silico studies. The curcumin analogs considered in this study composed of 4 groups classified by their core structure, β-diketone, monoketone, pyrazole, and isoxazole. Results: In the present study, both computational and experimental studies were performed. The specificity of curcumin analogs selected from the docked results was examined against human breast cancer cell lines. The screened curcumin compounds were then subjected to molecular dynamics simulation study. By modifying curcumin analogs, we found that protein-ligand affinity increases. The benzene ring with a hydroxyl group could enhance affinity by forming hydrophobic interactions and the hydrogen bond with the hydrophobic pocket. Hydroxyl, carbonyl or methoxy group also formed hydrogen bonds with residues in the adenine pocket and sugar pocket of HER2-TK. These modifications could suggest the new drug design for potentially effective HER2-TK inhibitors. Two outstanding compounds, bisdemethylcurcumin (AS-KTC006) and 3,5-bis((E)-3,4-dimethoxystyryl)isoxazole (AS-KTC021 ),were well oriented in the binding pocket almost in the simulation time, 30 ns. This evidence confirmed the results of cell-based assays and the docking studies. They possessed more distinguished interactions than known HER2-TK inhibitors, considering them as a promising drug in the near future. Conclusions: The series of curcumin compounds were screened using a computational molecular docking and followed by human breast cancer cell lines assay. Both AS-KTC006 and AS-KTC021 could inhibit breast cancer cell lines though inhibiting of HER2-TK. The intermolecular interactions were confirmed by molecular dynamics simulation studies. This information would explore more understanding of curcuminoid structures and HER2-TK. en
dc.language.iso en_US en
dc.subject Human Epidermal Growth Factor Receptor 2 en
dc.subject Cancer invasiveness en
dc.subject การลุกลามของมะเร็ง en
dc.subject Tyrosine kinases en
dc.subject ไทโรซีนไคเนส en
dc.subject Curcuminoid en
dc.subject เคอร์คิวมินอยด์ en
dc.subject Molecular docking en
dc.subject โมเลคิวลาร์ด็อกกิง en
dc.subject การจับกันของโมเลกุล en
dc.title Computational analyses of curcuminoid analogs against kinase domain of HER2 en
dc.type Article en


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